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使用对向投影的锥形束 CT 截断的平移运动校正算法。

Translational motion correction algorithm for truncated cone-beam CT using opposite projections.

机构信息

Bio Imaging and Signal Processing Lab., Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), Yuseong-gu, Daejeon, Republic of Korea.

Vatech Ewoo Research Innovation Center, Republic of Korea.

出版信息

J Xray Sci Technol. 2017;25(6):927-944. doi: 10.3233/XST-16231.

Abstract

BACKGROUND

Cone-beam computed tomography (CBCT) is widely used in various medical imaging applications, including dental examinations. Dental CBCT images often suffer from motion artifacts caused by involuntary rigid motion of patients. However, earlier motion compensation studies are not applicable for dental CBCT systems using truncated detectors.

OBJECTIVE

This study proposes a novel motion correction algorithm that can be applied for truncated dental CBCT images.

METHODS

We propose a two-step method for motion correction. First, we estimate the relative displacement of each pair of opposite projections by finding the motion vector that maximizes the two-dimensional correlation coefficients of the opposite projections. Second, we convert the relative displacement into the absolute coordinate motion that yields the highest image sharpness of the reconstruction image. Using the motion vectors in the absolute coordinate system, motion artifacts are then compensated by modifying the trajectory of the source and detector during the back-projection step of the image reconstruction process.

RESULTS

In simulation, the proposed method successfully estimated the true relative displacement. After converting to the absolute coordinate motions, the motion-compensated image was close to the ground-truth image and exhibited a lower mean-square-error than that of the uncompensated image. The results from the real data experiment also confirmed that the proposed method successfully compensated for the motion artifacts.

CONCLUSIONS

The experimental results confirmed that the proposed method was applicable to most dental CBCT systems using a truncated detector without any use of an additional motion tracking system nor prior knowledge.

摘要

背景

锥形束计算机断层扫描(CBCT)广泛应用于各种医学成像应用,包括牙科检查。牙科 CBCT 图像经常受到由于患者不自主刚性运动引起的运动伪影的影响。然而,早期的运动补偿研究不适用于使用截断探测器的牙科 CBCT 系统。

目的

本研究提出了一种可应用于截断牙科 CBCT 图像的新型运动校正算法。

方法

我们提出了一种两步运动校正方法。首先,通过找到最大化相反投影的二维相关系数的运动向量,来估计每对相反投影之间的相对位移。其次,我们将相对位移转换为绝对坐标运动,从而获得重建图像的最高图像清晰度。然后,通过在图像重建过程的反向投影步骤中修改源和探测器的轨迹,使用绝对坐标系中的运动向量来补偿运动伪影。

结果

在模拟中,所提出的方法成功地估计了真实的相对位移。转换为绝对坐标运动后,运动补偿图像接近真实图像,且均方误差低于未补偿图像。真实数据实验的结果也证实了该方法成功补偿了运动伪影。

结论

实验结果证实,该方法适用于大多数使用截断探测器的牙科 CBCT 系统,无需使用额外的运动跟踪系统或先验知识。

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